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Microstructural Investigation of LME Crack Initiated in Ferritic/Martensitic Steel T91 Loaded in Liquid Lead-Bismuth Eutectic at 300 °C

机译:液态铅-铋共晶钢在300°C下加载的铁素体/马氏体T91中LME裂纹的显微组织研究

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摘要

Liquid lead-bismuth eutectic (LBE) is one of the candidate materials for advanced nuclear systems. The structural materials used in contact with LBE are selected according to the resistance to liquid metal corrosion, irradiation embrittlement, and compatibility with the coolant. However, simultaneous presence of mechanical strain and LBE environment can induce liquid metal embrittlement (LME) in these materials. In this study, a specimen from candidate ferritic-martensitic steel T91 was tested by Constant Extension Rate Tensile (CERT) test exposed to PbBi environment with oxygen concentration 6 × 10−6 wt % at 300 °C up to rupture. Post-test examination using scanning electron microscopy (SEM) showed a deep crack indicating features of LME in the plastic strained region of the tested specimen. Further investigations focused on characterization of the fracture path and microstructure determination using focused ion beam (FIB) and energy dispersive X-ray spectrometry/electron backscatter diffraction (EDX/EBSD). This observation revealed that the dominant LME failure mode of the observed crack is translath or transgranular and the crack stopped at the high-angle grain boundary. The role of oxides in the crack initiation is discussed.
机译:液态铅铋共晶(LBE)是先进核系统的候选材料之一。与LBE接触使用的结构材料是根据对液态金属腐蚀的抗性,辐射脆性和与冷却剂的相容性来选择的。但是,同时存在机械应变和LBE环境会导致这些材料中的液态金属脆化(LME)。在这项研究中,通过恒定延伸速率拉伸(CERT)测试,在300°C的氧气浓度为6×10 −6 wt%的PbBi环境中测试了候选铁素体-马氏体钢T91的样品。破裂。使用扫描电子显微镜(SEM)的测试后检查显示了深裂纹,表明在测试样品的塑性应变区域中LME的特征。进一步的研究集中在断裂路径的表征和使用聚焦离子束(FIB)和能量色散X射线光谱/电子背散射衍射(EDX / EBSD)的微观结构确定上。该观察结果表明,所观察到的裂纹的主要LME破坏模式是透片或透晶,并且裂纹在高角度晶界处停止。讨论了氧化物在裂纹萌生中的作用。

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